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Paper imbibition for timing of multi-step liquid handling protocols on event-triggered centrifugal microfluidic lab-on-a-disc platforms

机译:用于事件触发式离心微流控盘上平台上多步骤液体处理方案计时的纸张吸收

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摘要

Rotational microfluidic platforms have attracted swiftly growing interest over the last decade due to their suitability for integration and automation of sample preparation and detection. Valving is of pivotal importance on these compact “Lab-on-a-Disc” (LoaD) platforms as all liquids are exposed to the same centrifugal field. A number of valving technologies have been developed to coordinate timing of serial and / or parallel multi-step / multi-liquid assay protocols comprising of laboratory unit opera-tions (LUOs) such as the release, metering and mixing of sample and reagents. So far these valving techniques could be broadly categorised into rotationally controlled or externally actuated schemes. Only recently a new, “event-triggered” flow control has been introduced. In this approach, a valve is opened upon arrival of a liquid at a defined destination on the disc; this innovative mechanism for the first time permits the cascading of LUOs independent of the spin rate. In one technology, dissolvable films (DFs) are configured with a pneumatic chamber to offer function akin to an electrical relay. Dissolving one DF, termed the control film (CF), results in the release of liquid at a distal location through a so-called load film (LF). In this paper, a new method for temporal control of actuating DF-based, event-triggered CFs which are serially aligned at defined distances along a paper strip is introduced. Liquids are transported through the paper strip at a given velocity, thus setting well-defined intervals between subsequent LUOs, e.g. incubation steps. As a proof-of-concept, we present a disc with inte-grated metering and mixing which can perform a prototypical, 4-fold serial dilution; a common function in bioanalytical protocols. Imbibition of the paper strip sequentially opens five valves for serial dilution and mixing. To illustrate an unprecedented level of on-disc automation, this is followed by a branched cascade of 17 event-triggered valves (for a total of 22 liquid handling steps) which completes the serial dilution protocol.
机译:在过去的十年中,旋转微流体平台因其适用于样品制备和检测的集成和自动化而迅速引起人们的兴趣。在这些紧凑的“盘上实验室”(LoaD)平台上,阀门至关重要,因为所有液体都暴露于相同的离心场中。已经开发出许多阀门技术来协调串行和/或并行多步/多液体测定规程的计时,包括实验室单位操作(LUO),例如样品和试剂的释放,计量和混合。到目前为止,这些阀门技术可大致分为旋转控制或外部驱动方案。直到最近,才引入了新的“事件触发”流控制。在这种方法中,一旦液体到达阀瓣上的预定位置,便打开一个阀门。这种创新的机制首次允许独立于旋转速率的LUO级联。在一种技术中,可溶膜(DFs)配置有气动腔,以提供类似于继电器的功能。溶解一个称为控制膜(CF)的DF会导致液体通过所谓的负载膜(LF)在远端位置释放。本文介绍了一种新的时间控制方法,该方法用于控制基于DF的事件触发的CF,这些CF沿纸带以规定的距离连续对齐。液体以给定的速度通过纸带,从而在后续的LUO之间设置了明确定义的间隔,例如孵化步骤。作为概念验证,我们提供了一种具有完整计量和混合功能的圆盘,可以进行典型的4倍系列稀释;生物分析方案中的常见功能。纸条的吸取顺序打开五个阀门以进行连续稀释和混合。为了说明盘片自动化的空前水平,接下来是由17个事件触发阀(总共22个液体处理步骤)组成的分支级联,它完成了串行稀释方案。

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